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CdTe 中的对称保护理想型 II 类 Weyl 声子。

Symmetry-Protected Ideal Type-II Weyl Phonons in CdTe.

机构信息

Department of Physics and Shenzhen Key Laboratory of Quantum Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, People's Republic of China.

Department of Physics, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, People's Republic of China.

出版信息

Phys Rev Lett. 2019 Aug 9;123(6):065501. doi: 10.1103/PhysRevLett.123.065501.

Abstract

Nontrivial low-energy excitations of crystalline solids have insightfully strengthened understanding of elementary particles in quantum field theory. Usually, topological quasiparticles are mainly focused on fermions in topological semimetals. We alternatively show by first-principles calculations and symmetry analysis that ideal type-II Weyl phonons are present in zinc-blende cadmium telluride, a well-known II-VI semiconductor. Importantly, these type-II Weyl phonons originate from the inversion between the longitudinal acoustic and transverse optical branches. Symmetry guarantees that the type-II Weyl points lie along the high-symmetry lines at the boundaries of the Brillouin zone even with a breaking of inversion symmetry, exhibiting the robustness of protected phonon features. The nontrivial phonon surface states and surface arcs projected on the semifinite (001) and (111) surfaces are investigated. The phonon surface arcs connecting the Weyl points with opposite chirality, guaranteed to be very long, are clearly visible. We not only offer a promising candidate for studying type-II Weyl phonons but also provide a route to realize symmetry-protected nontrivial phonons and related applications in realistic materials.

摘要

非平凡的晶体固体低能激发,深刻地增强了人们对量子场论中基本粒子的理解。通常,拓扑准粒子主要集中在拓扑半导体中的费米子上。我们通过第一性原理计算和对称分析表明,在众所周知的 II-VI 半导体闪锌矿碲化镉中存在理想的 II 型 Weyl 声子。重要的是,这些 II 型 Weyl 声子源于纵声学支和横光学支之间的反转。对称性保证了即使在反转对称性被破坏的情况下,II 型 Weyl 点也沿着布里渊区边界的高对称线存在,表现出受保护声子特征的鲁棒性。研究了在半无穷(001)和(111)表面上投影的非平凡声子表面态和表面弧。连接具有相反手性的 Weyl 点的声子表面弧,保证非常长,清晰可见。我们不仅提供了研究 II 型 Weyl 声子的有前途的候选者,而且还为实现对称保护的非平凡声子以及在实际材料中的相关应用提供了途径。

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